The second variety of metamorphic rocks is represented by the gneisses
and crystalline schists. Gneiss has essentially the same composition as
granite and can frequently hardly be distinguished from it, except by a
microscopic study of its sections, and even thus it is sometimes
difficult to determine. Frequently a number of new minerals is formed in
the metamorphic changes. The microstructure of a gneiss is shown in Fig.
9.[26] The schists include an extremely variable class of rocks, of
which quartz is the prevailing constituent, and which, as a rule, are
deficient in potash and other important ingredients.
=36. Rocks Formed Through Igneous Agencies, or Eruptive Rocks.=—This
group includes all those rocks, which, having been at some time in a
state of igneous fusion, have been solidified into their present form by
a process of cooling. It may be stated, as a general principle, that the
greater the pressure under which a rock solidifies and the slower and
more gradual the cooling the more perfect will be found the crystalline
structure. Hence, it follows that the older and more deep-seated rocks
which are forced up in the form of dikes, bosses, or intrusive sheets,
into the overlying masses, and which have become exposed only through
erosion and removal of the overlying rocks, are the more highly
crystalline.
The eruptive rocks are divided into two main groups, _viz._:
(a) Intrusive or plutonic rocks, and
(b) Effusive or volcanic rocks.
Among the more important of the first division of the plutonic form,
from an agricultural point of view, are the granites. The essential
constituents of granite are quartz, potash feldspar, and plagioclase.
One or more minerals of the mica, amphibole or pyroxene groups are also
commonly present, and in microscopic proportions apatite and particles
of magnetic iron. The more valuable constituents, from an agricultural
standpoint, are the minerals potash feldspar, and apatite, which furnish
by their decomposition the essential potash and phosphoric acid.
In addition to the granites, which have already been mentioned, the
group includes the syenites, the nepheline syenites, the diorites, the
gabbros, the diabases, the theralites, the peridotites, and the
pyroxenites.
The second group, the effusive or volcanic rocks, includes those igneous
rocks, which, like the first group, have been forced up through the
overlying rocks, but which were brought to the surface, flowing out as
lavas. These, therefore, represent, in many cases, only the upper or
surface portions of the first group, differing from them structurally,
because they have cooled under little pressure more rapidly, and hence
are not so distinctly crystalline. These comprise the following groups:
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